1) hexanolactam
己丙酰胺
2) N,N-dihexylacrylamide
N,N-二己基丙烯酰胺
3) N,N-tetrahexylmalonamide
N,N-四己基丙二酰胺
4) caprolactam
[,kæprəu'læktəm]
己内酰胺
1.
Effect of ultraviolet on Phanerochaete chrysosporium for decomposing caprolactam and degrading polyamide 6;
紫外线照射白腐菌对己内酰胺分解及聚酰胺6降解的影响
2.
The research to the properties of soybean degradable material that modified by caprolactam;
己内酰胺改性对大豆分离蛋白可降解材料性能影响的研究
3.
Research on the Kinetics of Anionic Polymerization of Caprolactam to Nylon Using Adiabatic Method;
绝热法研究己内酰胺阴离子聚合尼龙动力学
5) ε-caprolactam
己内酰胺
1.
By means of anionic ring-opening copolymerization, a series of copolymers of ε-Capro-lactone with ε-caprolactam were synthesized at different lactam/lactone ratio, with the sodium hydroxide as catalyst, the aromatic diisocyanate as initiator, respectively.
以氢氧化钠为引发剂,芳香族二异氰酸酯为活化剂,用不同物质的量比的己内酰胺和己内酯,采用阴离子开环聚合工艺合成了一系列己内酰胺-己内酯共聚物。
2.
Recent development of vapor - phase Beckmann rearrangement of cyclohexanone oxime to ε-caprolactam catalyzed by molecular sieves was reviewed.
介绍了用以代替浓硫酸催化环己酮肟Beckmann重排反应制己内酰胺的各类分子筛催化剂的研究新进展,并 对其反应机理、催化剂的失活与再生、反应新工艺进行了阐述。
3.
The effects of preparation methods of TiO 2-ZrO 2 on catalytic performance of B 2O 3/TiO 2-ZrO 2 for vapor-phase Beckmann rearrangement of cyclohexanone oxime to ε-caprolactam were investigated.
考察了载体TiO2 ZrO2 的制备方法对B2 O3 /TiO2 ZrO2 催化环己酮肟气相Beckmann重排制己内酰胺反应性能的影响。
6) Hexanolactam
己内酰胺
1.
The trends of direct oxidation of cyclohexanone to hexanolactam and developments of different routes in preparation of feed stocks of nylon-66 are also described.
简介了环己酮直接氧化制己内酰胺的发展趋势及尼龙-66生产原料路线的开发动向。
2.
Hydrofining is used to obtain high-quality hexanolactam with Raney-Ni as the preferred catalyst.
己内酰胺是石油化工生产中的一种重要化工原料,98%以上的己内酰胺用于生产尼龙-6。
3.
The corrosion behavior and protective methods of three typical stainless steel heat exchangers in hexanolactam apparatus were studied in this paper.
本文以己内酰胺装置中不锈钢换热器为研究背景,运用不锈钢腐蚀研究理论及成果对三台典型的不锈钢换热设备的失效形式进行了腐蚀分析与对策研究。
补充资料:丙胺酰-谷氨酰胺
分子式:暂无
分子量:暂无
CAS号:暂无
性质:暂无
制备方法:暂无
用途:暂无
分子量:暂无
CAS号:暂无
性质:暂无
制备方法:暂无
用途:暂无
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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